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An Incommensurately Modulated Structure of eta '-Phase of Cu3+xSi Determined by Quantitative Electron Diffraction Tomography
- 1.0440189 - ÚACH 2015 RIV US eng J - Článek v odborném periodiku
Palatinus, L. - Klementová, Mariana - Dřínek, V. - Jarošová, M. - Petříček, V.
An Incommensurately Modulated Structure of eta '-Phase of Cu3+xSi Determined by Quantitative Electron Diffraction Tomography.
Inorganic Chemistry. Roč. 50, č. 8 (2011), s. 3743-3751. ISSN 0020-1669. E-ISSN 1520-510X
Grant CEP: GA ČR GA203/09/1088
Výzkumný záměr: CEZ:AV0Z40320502
Klíčová slova: copper silicide * incommensurate structure * electron diffraction tomography * ab inition structure solution * superspace
Kód oboru RIV: CA - Anorganická chemie
Impakt faktor: 4.601, rok: 2011 ; AIS: 0.966, rok: 2011
DOI: https://doi.org/10.1021/ic200102z
he diffraction data of eta´-Cu(3+x)(Si,Ge) were collected by 3D quantitative electron diffraction tomography on a submicrometer-sized sample, and the structure was solved by the charge-flipping algorithm in superspace. The modulation functions of some atoms are very complicated and reach amplitudes comparable with the unit cell dimensions. The modulated structure can be described as sheets of Cu clusters separated by honeycomb layers of mixed Si/Ge positions. The shape of the Cu clusters in the sheets strongly varies with the modulation phase, and the predominant form is an icosahedron. The striving of the Cu layers to form icosahedral clusters is deemed to be the main driving force of the modulation. The combination of methods used in this work can be applied to other structures that are difficult to crystallize in large crystals and opens new perspectives, especially for investigations of aperiodic or otherwise complex metallic alloys.
Trvalý link: http://hdl.handle.net/11104/0243309
Počet záznamů: 1